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Quantitative Analysis of 39 Polybrominated Diphenyl Ethers by Isotope Dilution GC/Low-Resolution MS

机译:同位素稀释GC /低分辨质谱法定量分析39种多溴联苯醚

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A GC/low-resolution MS method for the quantitative isotope dilution analysis of 39 mono- to heptabrominated diphenyl ethers was developed. The effects of two different ionization sources, electron impact (EI) and electron capture negative ionization (ECNI), and the effects of their parameters on production of high-mass fragment ions [M-xH-yBr]~(-) specific to PBDEs were investigated. Electron energy, emission current, source temperature, ECNI system pressure, and choice of ECNI reagent gases were optimized. Previously unidentified enhancement of PBDE high-mass fragment ion [M-xH-yBr]~(-) abundance was achieved. Electron energy had the largest impact on PBDE high-mass fragment ion abundance for both the ECNI and EI sources. By monitoring high-mass fragment ions of PBDEs under optimized ECNI source conditions, quantitative isotope dilution analysis of 39 PBDEs was conducted using nine ~(13)C_(12) labeled PBDEs on a low-resolution MS with low picogram to femtogram instrument detection limits.
机译:建立了用于39种单溴代至七溴代二苯醚的同位素定量稀释分析的GC /低分辨率MS方法。两种不同电离源的影响,电子碰撞(EI)和电子捕获负电离(ECNI),以及它们的参数对多溴二苯醚特有的高质量碎片离子[M-xH-yBr]〜(-)产生的影响被调查了。优化了电子能量,发射电流,源温度,ECNI系统压力和ECNI反应气的选择。实现了PBDE高质量碎片离子[M-xH-yBr]〜(-)丰度的未知增强。电子能量对ECNI和EI源的PBDE高质量碎片离子丰度影响最大。通过在优化的ECNI源条件下监测PBDEs的高质量碎片离子,在低分辨率MS上对九种〜(13)C_(12)标记的PBDEs进行了39种PBDEs的同位素稀释分析,皮克级至飞克级仪器的检测极限。

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